A broadcasting signal transmitting apparatus that transmits a plurality of signals through a plurality of antennas to increase a data transmission rate. The broadcasting signal transmitting apparatus includes a signal generator configured to generate the plurality of signals each of which includes at least one preamble symbol and data symbols, a frequency allocator configured to allocate a first subcarrier position of a whole frequency to a first preamble symbol included in a first signal among the plurality of signals and to allocate, by shifting a frequency position of the first subcarrier position by a preset interval, a second subcarrier position to a second preamble symbol included in a second signal among the plurality of signals, and a transmitter configured to transmit the plurality of signals through the plurality of antennas. The antennas respectively correspond to subcarrier positions allocated to the plurality of signals.
Legal claims defining the scope of protection, as filed with the USPTO.
1. A broadcasting signal transmitting apparatus comprising: a signal generator configured to generate a plurality of signals comprising a first signal and a second signal, each of the first signal and the second signal including a preamble symbol and a data symbol; a frequency allocator configured to: insert a first signaling into a preamble symbol of the first signal based on a first set of subcarriers, and insert a second signaling into a preamble symbol of the second signal based on a second set of subcarriers; and a transmitter configured to transmit the plurality of signals through a plurality of antennas respectively, wherein a frequency position of the second set of subcarriers is shifted by a predetermined interval from a frequency position of the first set of subcarriers, wherein the first set of subcarriers comprises a first subcarrier and a second subcarrier adjacent to the first subcarrier, a first interval between the first subcarrier and the second subcarrier being determined based on a number of the plurality of signals and the predetermined interval, wherein the first set of subcarriers further comprises a third subcarrier adjacent to the second subcarrier, a second interval between the second subcarrier and the third subcarrier being determined by a value greater than the first interval and less than a third interval, and wherein the third interval is determined based on the number of the plurality of signals, the predetermined interval and a number of subcarriers used for transmitting signaling.
2. The broadcasting signal transmitting apparatus as claimed in claim 1 , wherein the frequency allocator allocates the freguency position of the first set of subcarriers so that a PAPR (Peak to Average Power Ratio) of the frequency position of the first set of subcarriers is equal to or lower than a predetermined value.
3. The broadcasting signal transmitting apparatus as claimed in claim 1 , wherein a number of the plurality of antennas is determined based on a length of at least one of the preamble symbol of the first signal and the preamble symbol of the second signal and an FFT (Fast Fourier Transform) size of the at least one of the preamble symbol of the first signal and preamble symbol of the second signal.
4. The broadcasting signal transmitting apparatus as claimed in claim 1 , wherein the broadcasting signal transmitting apparatus transmits the plurality of signals using a DVB-T2 (Digital Video Broadcasting—Second Generation Terrestrial) method.
5. The broadcasting signal transmitting apparatus as claimed in claim 4 , wherein each of the plurality of signals includes a T2 frame that includes a P1 preamble symbol, a P2 preamble symbol, and data symbols, and wherein at least one of the preamble symbol of the first signal and the preamble symbol of the second signal includes the P1 preamble symbol.
6. The broadcasting signal transmitting apparatus as claimed in claim 5 , wherein the P1 preamble symbol indicates a start point of the T2 frame, the P2 preamble symbol transmits information on the data symbols, and the data symbols transmit data.
7. The broadcasting signal transmitting apparatus as claimed in claim 1 , wherein a number of preamble symbols generated by the signal generator is equal to the number of the plurality of antennas.
8. A method for controlling a broadcasting signal transmitting apparatus the method comprising: generating a plurality of signals comprising a first signal and a second signal, each of the first signal and the second signal including a preamble symbol and a data symbol; inserting a first signaling into a preamble symbol of the first signal based on a first set of subcarriers; inserting a second signaling into a preamble symbol of the second signal based on a second set of subcarriers; and transmitting the plurality of signals through the plurality of antennas respectively, wherein a freguency position of the second set of subcarriers is shifted by a predetermined interval from a freguency position of the first set of subcarriers, wherein the first set of subcarriers comprises a first subcarrier and a second subcarrier adjacent to the first subcarrier, a first interval between the first subcarrier and the second subcarrier being determined based on a number of the plurality of signals and the predetermined interval, wherein the first set of subcarriers further comprises a third subcarrier adjacent to the second subcarrier, a second interval between the second subcarrier and the third subcarrier being determined by a value greater than the first interval and less than a third interval, and wherein the third interval is determined based on the number of the plurality of signals, the predetermined interval and a number of subcarriers used for transmitting signaling.
9. The method for controlling a broadcasting signal transmitting apparatus as claimed in claim 8 , furter comprising allocating the freguency position of the first set of subcarriers so that a PAPR (Peak to Average Power Ratio) of the frequency position of the first set of subcarriers is equal to or lower than a predetermined value.
10. The method for controlling a broadcasting signal transmitting apparatus as claimed in claim 8 , wherein a number of the plurality of antennas is determined based on a length of at least one of the preamble symbol of the first signal and the preamble symbol of the second signal and an FFT (Fast Fourier Transform) size of the at least one of the preamble symbol of the first signal and the first signal and the preamble symbol of the second signal.
11. The method for controlling a broadcasting signal transmitting apparatus as claimed in claim 8 , further comprising transmitting the plurality of signals using a DVB-T2 (Digital Video Broadcasting —Second Generation Terrestrial) method.
12. The method for controlling a broadcasting signal transmitting apparatus as claimed in claim 11 , wherein each of the plurality of signals includes a T2 frame that includes a P1 preamble symbol, a P2 preamble symbol, and data symbols, and at least one of the preamble symbol of the first signal and the preamble symbol of the second signal includes the P1 preamble symbol.
13. The method for controlling a broadcasting signal transmitting apparatus as claimed in claim 12 , wherein at least one of the preamble symbol of the first signal and the preamble symbol of the second signal indicates a start point of the T2 frame, the P2 preamble symbol transmits information on the data symbols, and the data symbols transmit data.
14. A broadcasting signal receiving apparatus comprising: a symbol detector configured to receive a plurality of signals comprising: a first signal and a second signal each of the first signal and the second signal including a preamble symbol and a data symbol; a demodulator configured to demodulate the first and second signals; and a decoder configured to decode the demodulated first and second signals, wherein a first signaling is inserted into a preamble symbol of the first signal based on a first set of subcarries and a second signaling is inserted into a preamble symbol of the second signal based on a second set of subcarrier, wherein a frequency position of the second set of subcarriers is shifted by a predetermined interval from a frequency position of the first set of subcarriers, wherein the first set of subcarriers comprises a first subcarrier and a second subcarrier adjacent to the first subcarrier, a first interval between the first subcarrier and the second subcarrier being determined based on a number of the plurality of signals and the predetermined interval, wherein the first set of subcarriers further comprises a third subcarrier adjacent to the second subcarrier, a second interval between the second subcarrier and the third subcarrier being determined by a value greater than the first interval and less than a third interval, and wherein the third interval is determined based on the number of the plurality of signals, the predetermined interval and a number of subcarriers used for transmitting signaling.
15. The broadcasting signal receiving apparatus of claim 14 , wherein the first and second signals are simultaneously received at the symbol detector.
Cooperative Patent Classification codes for this invention. Click any code to explore related patents in that topic.
May 29, 2014
December 5, 2017
Browse 5M+ US patents with plain-English claim translations and AI-generated analysis.